Rotating helical structures are very effective in low Reynolds number swimming and propulsion. Helical rods are extensively studied theoretically and computationally with asymptotical methods, but the effects of the geometric variables in full-scale and the performance of other helical structures, such as ribbons and Archimedean screws, are also important for the understanding of swimming in confinements and design of micro swimming robots. In this study, a CFD model is developed to study swimming of helical rods, ribbons, screws and filaments, in circular channels under constant angular velocity or constant external torque. Effects of geometric parameters and the confinement radius on the swimming velocity and efficiency are demonstrated. ...
Micro swimmers have a great potential to realize minimally invasive medical procedures to detect and...
Micro swimming robots offer many advantages in biomedical applications, such as delivering potent dr...
Trajectories are obtained for millimeter-scale artificial microswimmers inside circular channels fil...
Progress in manufacturing techniques avails the production of artificial micro swimmers (AMS) in var...
This study reports experimental and numerical model results on swimming of microswimmers inside circ...
Artificial microswimmers present both a solution and a challenge as alternative tools to be used in ...
Artificial microswimmers have a huge potential in various microfluidic and medical applications. Mos...
AbstractWe present a computational fluid dynamics (CFD) model for the swimming of micro organisms wi...
Understanding trajectories of natural and artificial helical swimmers under confinement is importan...
Controlled swimming of bio-inspired microrobots in confined spaces needs to be understood well for p...
Bio-inspired microswimmers have great potential for medical procedures in conduits and vessels insid...
International audienceHelical swimmers, actuated by low-strength uniform rotating magnetic fields, c...
Micro swimming robots offer many advantages in biomedical applications, such as delivering potent dr...
We analyze the motion of artificial magnetic microswimmers which mimic the swimming of natural organ...
Trajectories of microorganisms and artificial helical swimmers in confinements are important in biol...
Micro swimmers have a great potential to realize minimally invasive medical procedures to detect and...
Micro swimming robots offer many advantages in biomedical applications, such as delivering potent dr...
Trajectories are obtained for millimeter-scale artificial microswimmers inside circular channels fil...
Progress in manufacturing techniques avails the production of artificial micro swimmers (AMS) in var...
This study reports experimental and numerical model results on swimming of microswimmers inside circ...
Artificial microswimmers present both a solution and a challenge as alternative tools to be used in ...
Artificial microswimmers have a huge potential in various microfluidic and medical applications. Mos...
AbstractWe present a computational fluid dynamics (CFD) model for the swimming of micro organisms wi...
Understanding trajectories of natural and artificial helical swimmers under confinement is importan...
Controlled swimming of bio-inspired microrobots in confined spaces needs to be understood well for p...
Bio-inspired microswimmers have great potential for medical procedures in conduits and vessels insid...
International audienceHelical swimmers, actuated by low-strength uniform rotating magnetic fields, c...
Micro swimming robots offer many advantages in biomedical applications, such as delivering potent dr...
We analyze the motion of artificial magnetic microswimmers which mimic the swimming of natural organ...
Trajectories of microorganisms and artificial helical swimmers in confinements are important in biol...
Micro swimmers have a great potential to realize minimally invasive medical procedures to detect and...
Micro swimming robots offer many advantages in biomedical applications, such as delivering potent dr...
Trajectories are obtained for millimeter-scale artificial microswimmers inside circular channels fil...